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视觉运动适应:分布式幅度控制系统的证据

Visuo-motor adaptation: evidence for a distributed amplitude control system.

作者信息

Bock O, Burghoff M

机构信息

German Sports University, Institute of Physiology, Köln.

出版信息

Behav Brain Res. 1997 Dec;89(1-2):267-73. doi: 10.1016/s0166-4328(97)00069-7.

Abstract

We investigated the constraints for visuo-motor adaptation in human pointing movements. Subjects pointed at sequentially presented visual targets while visual feedback about their finger position was either absent (pre- and post-period), or was manipulated such as to require a gradual reduction of response amplitude (per-period). We found that response amplitudes were smaller during the post- than during the pre-period, which documents the existence of adaptation to distorted visual feedback. We further found that adaptation can transfer fully to untrained amplitudes (Exp. 1), although the amount of transfer may be reduced if trained and untrained amplitudes are substantially different (Exp. 2). However, selective adaptation of one amplitude but not another can also be yielded if the paradigm explicitly asks for it (Exp. 3), and if the two amplitudes differ by more than about 10 cm (Exp. 4). We conclude from these findings that the adapted mechanism consists of amplitude-specific elements, tuned to amplitude spans of some 10 cm.

摘要

我们研究了人类指向运动中视觉-运动适应的限制因素。受试者在依次呈现视觉目标时进行指向动作,此时关于其手指位置的视觉反馈要么不存在(前期和后期),要么因要求逐渐减小反应幅度而受到操控(适应期)。我们发现反应幅度在后期比前期更小,这证明了对失真视觉反馈的适应的存在。我们还进一步发现,适应能够完全转移到未训练的幅度上(实验1),不过如果训练幅度和未训练区间有显著差异,转移量可能会减少(实验2)。然而,如果实验范式明确要求,并且两个幅度相差超过约10厘米,也能够产生对一个幅度而非另一个幅度的选择性适应(实验3和实验4)。我们从这些发现中得出结论,适应机制由幅度特异性元素组成,这些元素针对约10厘米的幅度范围进行了调整。

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